Effect of symmetric and asymmetric tilt grain boundaries on the tensile behaviour of bcc-Niobium
D Singh and A Parashar, COMPUTATIONAL MATERIALS SCIENCE, 143, 126-132 (2018).
DOI: 10.1016/j.commatsci.2017.11.005
In this article, molecular dynamics based simulations were performed to investigate structure, energy and tensile behaviour of niobium (Nb) bi- crystals containing symmetric and asymmetric tilt grain boundaries. Six symmetric and four Sigma 5 asymmetric tilt grain boundaries about < 1 0 0 > as tilt axis were generated in molecular dynamics based environment. Minimum grain boundary (GB) energy for each configuration was predicted, and subsequently the bi-crystal was subjected to tensile loading. The strengthening of bi-crystals in conjunction with dislocation evaluation was studied with the help of atomistic simulations, and results were further fitted with Taylor's work hardening expression. Simulations help in elucidating the effect of GBs and dislocations on the mechanical behaviour of Nb bi-crystals. (C) 2017 Elsevier B.V. All rights reserved.
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